The conversation discusses a personalized hair loss treatment plan based on DNA test results, recommending Minoxidil, Dutasteride, 17-alpha Estradiol, Cetirizine, and PRP sessions. The test identifies a high risk of hair loss due to DHT but a good response to Minoxidil, suggesting a tailored approach to treatment.
PP405 is a new hair loss treatment in phase 2 trials that may promote hair growth by increasing lactate production and activating hair follicle stem cells. It could potentially replace hormone-disrupting treatments like Minoxidil and finasteride.
The conversation discusses creating a personalized topical treatment for hair loss, with ingredients like finasteride, minoxidil, tretinoin, melatonin, caffeine, and others. Users share their ideal formulations, including combinations of minoxidil, finasteride, tretinoin, adenosine, and other compounds, while also discussing the importance of managing inflammation.
Androgenetic alopecia is affected by scalp DHT levels, not sensitivity, with treatments like finasteride and dutasteride aiming to optimize these levels. Personalized DHT management is crucial for effective hair growth.
A new topical treatment, TH07, combining finasteride, latanoprost, and minoxidil, is entering phase III trials with promising early results. Some users express skepticism, noting the treatment uses existing products.
Various hair growth treatments were discussed, including microneedling, bimatoprost, setipiprant, stemoxydine, PGE2, CB-03-01, WNT Beta-Catenin upregulators, KY19382, topical estrogen, IGF-1, GH, MK-677, oral castor oil, fisetin, resveratrol, cetrizine, and lactic acid. Users shared experiences and sources for these treatments, with some expressing interest in topical solutions and others noting the lack of FDA approval or scientific evidence for certain options.
The conversation discusses various theories and suggestions for hair loss, with a focus on DHT as the primary cause. Treatments mentioned include Minoxidil, finasteride, and RU58841.
The user is experiencing hair loss without a family history and suspects stress or telogen effluvium (TE) as the cause, despite using finasteride without results. Others suggest stress, vitamin deficiencies, or other conditions could be factors, and some mention that balding can occur without a family history.
Various peptides are discussed for treating male pattern baldness, with some available for topical use like GHK-Cu and Ac-KGHK, while others remain in research stages. Users are interested in experiences and sourcing these treatments.
The conversation discusses potential advancements in two hair loss drugs, KX-826 and GT20029, and the interest in whether transitioning from oral finasteride to these drugs would maintain hair growth. One reply expresses skepticism about the compounds' representation.
The conversation discusses topical androgen receptor blockers for hair loss, mentioning Clascoterone, Pyrilutamide, GT20029, and RU58841. Ketoconazole's effectiveness and application methods are also debated.
A Spanish dermatologist suggests sulforaphane for androgenetic alopecia (AGA) due to its potential to remove DHT metabolites, though high dosages are needed. A topical formulation might be possible.
Magnesium L-Threonate may help treat balding by reducing DKK-1 expression without affecting DHT. Users discuss its potential effectiveness and application methods, with some considering trying it topically.
The conversation is about seeking updates on new hair loss treatments, specifically mentioning scube3 and GT20029, with one person mentioning HMI_115 as showing promising results.
Hair loss is often linked to inflammation and DHT, with treatments like finasteride, dutasteride, and minoxidil being effective for many. Natural remedies like turmeric and oils are discussed, but medications are generally seen as more reliable for managing genetic hair loss.
Hair cloning for hair loss is unlikely to be available or affordable in the next 10 years. Current treatments like Minoxidil, finasteride, and RU58841 are still the main options, with skepticism about new advancements.
The conversation discusses CRISPR-on & CRISPR-off as a potential cure for baldness, contrasting it with hair cloning and other treatments like Minoxidil, finasteride, and RU58841. It also mentions the potential of mRNA for gene expression control and the prioritization of gene editing for severe genetic conditions.
Excess Vitamin A and topical retinoids can cause diffuse hair shedding. The user suspects their chronic telogen effluvium may be linked to using adapalene, a topical retinoid.
The user has been using oral minoxidil and dutasteride for hair loss without success and is considering adding topical 17α-estradiol, Pyrilutamide, Clascoterone, or cetirizine. They have confirmed low serum DHT levels and are exploring additional treatments due to genetic sensitivity to DHT and prostaglandin D2.
The conversation discusses hair loss treatments, mentioning minoxidil, finasteride, RU58841, VDPHL, GT20029, and follicle cloning as potential solutions. It also reveals that the discussion about PP405 was an April Fool's joke.
RU58841 is discussed as a potential hair loss treatment, with comparisons to finasteride. There is interest in leaked trial data, but no official clinical validation or approval for RU58841.
The conversation is about the effectiveness of hair loss treatments, specifically finasteride and dutasteride, in different populations. Some users believe that the results of Japanese studies may not be relevant to Caucasian men, especially young ones, and that East Asians may respond better to these treatments. Others argue that clinical studies should be the basis for decision-making, while acknowledging that individual responses to medications can vary.
The conversation discusses the idea of naturally lowering testosterone levels to potentially reduce DHT and help with hair loss, though it is speculative and not tested by the original poster. Participants suggest using treatments like finasteride, dutasteride, or RU58841 instead, as they directly target DHT without reducing testosterone.
Fatty acid metabolic signaling can activate epithelial stem cells for hair regeneration. Oleic and palmitoleic acids showed the best results, but practical application on humans remains uncertain.
The conversation humorously discusses two resilient hair strands that resist DHT, with mentions of minoxidil and finasteride as ineffective treatments. Users joke about cloning the hairs and the mystery of baldness.
The user is considering blood tests to understand their receding hairline and is exploring brewer's yeast for its biotin content. They have been using topical Minoxidil, biotin, collagen, and microneedling, but are avoiding oral Finasteride and Dutasteride.
The conversation discusses the potential of topical rapamycin, metformin, and alpha-ketoglutarate (a-KG) for hair growth, with skepticism expressed about their effectiveness based on personal experience and existing use. It also mentions AICAR, known as cardarine or GW, which is not suitable for long-term use due to cancer risks in animal studies and its similarity to metformin.